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首页> 外文期刊>ACS applied materials & interfaces >Artificial Solid Electrolyte Interphases for Lithium Metal Electrodes by Wet Processing: The Role of Metal Salt Concentration and Solvent Choice
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Artificial Solid Electrolyte Interphases for Lithium Metal Electrodes by Wet Processing: The Role of Metal Salt Concentration and Solvent Choice

机译:通过湿法加工锂金属电极的人造固体电解质晶间:金属盐浓度和溶剂选择的作用

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摘要

In this study, the artificial solid electrolyte interphase (SEI) formed on lithium metal when treated in ZnCl2 solutions is thoroughly investigated. The artificial SEI on lithium metal electrodes substantially decreases the interfacial resistance by ca. 80% and improves cycling stability in comparison to untreated lithium. The presence of a native SEI negatively affects the morphology and interfacial resistance of the artificial SEI. Increasing the ZnCl2 concentration in tetrahydrofuran (THF) (precursor solution) results in higher homogeneity of the surface morphology. Independent of the ZnCl2 concentrations, the artificial SEI is composed of C-x, CO, LiCl, Li2CO3, ZnCl2, and LixZny, alloys. ZnCl2 (1 M) produces the most homogenous surface and additional surface species with carbonyl side groups. Nonetheless, the ZnCl2 concentration only has a small effect on the interfacial resistance or cycling stability. Using ethyl methyl carbonate (EMC) as the solvent significantly reduces the interfacial resistance to 7 Omega cm(2), in comparison to 25 Omega cm(2) for THF. The composition of the artificial SEIs varies depending on the solvent. Either way, the SEI consists of C-x LixC, LiCI, Li2CO3, ZnCl2, and LiZn alloys. The THF-based SEI additionally features ether and carbonyl groups, LiZnO, and Zn metal. For the artificial SEI formed with both solvents, the atomic percentage of the LiZn alloy increases close to the Li surface.
机译:在该研究中,彻底研究了在ZnCl2溶液中处理时在锂金属上形成的人造固体电解质相互作用(SEI)。锂金属电极上的人造SEI基本上降低了CA的界面抗性。与未处理的锂相比,80%并提高循环稳定性。天然SEI的存在对人工SEI的形态和界面抗性产生负面影响。增加四氢呋喃(THF)(前体溶液)中的ZnCl2浓度导致表面形态的均匀性更高。独立于ZnCl2浓度,人工SEI由C-X,CO,LICL,Li2CO3,ZnCl 2和Lixzny,合金组成。 ZnCl2(1米)产生最均匀的表面和具有羰基侧基的附加表面物质。尽管如此,ZnCl2浓度仅对界面抗性或循环稳定性具有很小的影响。与溶剂的乙基碳酸甲酯(EMC)用作溶剂显着降低到7ωcm(2)的界面抗性,与THF的25℃(2)相比。人造SEI的组成根据溶剂而变化。无论哪种方式,SEI由C-X Lixc,Lici,Li2CO3,ZnCl2和Lizn合金组成。基于THF的SEI另外具有乙醚和羰基,LiznO和Zn金属。对于用溶剂形成的人工SEI,Lizn合金的原子百分比靠近Li表面增加。

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